Uniform bale formation system
A baler implement has a pick-up to gather crop material, a baling chamber having an inlet, and a uniform feeding apparatus. The uniform feeding apparatus includes a flap. The flap is positioned downstream of the pick-up and upstream of the inlet relative to movement of the crop material along a crop path. The flap is selectively controllable for movement relative to a central longitudinal axis of the baler implement between a first position of the flap to direct the crop material toward a first lateral side of the baling chamber relative to the central longitudinal axis, and a second position of the flap to direct the crop material toward a second lateral side of the baling chamber relative to the central longitudinal axis.
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FIELD OF THE DISCLOSUREThe present disclosure relates generally to a feeding apparatus of a baler implement.
BACKGROUND OF THE DISCLOSUREA baler implement gathers crop material from a windrow. The windrow is a row of cut hay or small grain crop that has been cut and dried. The baler implement forms the gathered crop material into a bale. During the crop material gathering, due to differences between the width of the windrow and the effective width which the baler implement can pick up, losses and spoilage of the crop material may occur. An operator may control the baler implement based on their skill and experience to minimize losses and spoilage. For example, the operator may maneuver the baler implement along a Zig Zag driving path to optimize crop gathering while forming a bale of uniform density and size. However, continuous operation in this manner may burden and tire the operator.
SUMMARY OF THE DISCLOSUREAccording to an aspect of the present disclosure, a baler implement includes a main frame, a pick-up, a baling system, and a flap. The main frame extends along a central longitudinal axis between a forward end and a rearward end relative to a direction of travel. The pick-up is operable to gather and move crop material along a crop path relative to the main frame. The baling system is attached to the main frame. The baling system defines a baling chamber having an inlet positioned to receive the crop material therethrough from the pick-up. The baling system is operable to form the crop material into a bale within the baling chamber. The flap is positioned downstream of the pick-up and upstream of the inlet relative to movement of the crop material along the crop path. The flap is selectively controllable for movement relative to the central longitudinal axis between a first position of the flap to direct the crop material toward a first lateral side of the baling chamber relative to the central longitudinal axis, and a second position of the flap to direct the crop material toward a second lateral side of the baling chamber relative to the central longitudinal axis.
According to an aspect of the present disclosure, a uniform feeding apparatus of a baler implement is disclosed. The baler implement has a pick-up to gather crop material, and a baling chamber having an inlet. The uniform feeding apparatus includes a flap. The flap is positioned downstream of the pick-up and upstream of the inlet relative to movement of the crop material along the crop path. The flap is selectively controllable for movement relative to a central longitudinal axis of the baler implement between a first position of the flap to direct the crop material toward a first lateral side of the baling chamber relative to the central longitudinal axis, and a second position of the flap to direct the crop material toward a second lateral side of the baling chamber relative to the central longitudinal axis.
Other features and aspects will become apparent by consideration of the detailed description and accompanying drawings.
The detailed description of the drawings refers to the accompanying figures in which:
A good round bale is well-packed, has square corners and has a uniform size across its width. It captures and holds the feed, is easy to handle and will store well with little spoilage. In order to form the good bale, the weight of the bale is evenly or uniformly distributed across a lateral direction. During the bale formation, it is possible that one side of the growing bale is heavier or have a larger diametric size or higher density than the other side of the growing bale. A uniform feeding apparatus, for example, a flap(s) may be applied to a baler implement to guide the crop flow through the baler implement toward the side of the growing bale that is lighter or has smaller diametric size or lower density than the other side in real time to form a good round bale. With the uniform feeding apparatus that guides the crop flow toward two opposite lateral sides of the baling chamber relative to a central longitudinal axis before the crop material enters the inlet of the baling chamber, the characteristic of the bale such as weight, density, and diametric size can be uniformly distributed or presented along the width of the bale to form the good bale. As such, an operator may not need to drive in a specific pattern to form the good bale. The detail of the uniform feeding apparatus and the baler implement the uniform feeding apparatus may be installed on is described below.
Referring to
The baler implement 20 includes a baling system 30 having a housing 31 forming a baling chamber 32. The housing 31 is attached to and supported by the main frame 22. The housing 31 may include one or more walls or panels that at least partially enclose and/or define the baling chamber 32. The baling chamber 32 has a first lateral side 322 and a second lateral side 324 (
The baler implement 20 includes a pick-up 26 disposed proximate the forward end 222 of the main frame 22. The pick-up 26 gathers crop material from a ground surface and directs the gathered crop material toward and into an inlet 34 of the baling chamber 32. The pick-up 26 moves crop material along a crop path 92 relative to the main frame 22. The pick-up 26 may include, but is not limited to tines, forks, augers, conveyors, baffles, etc., for gathering and moving the crop material. The baler implement 20 may be equipped with a pre-cutter 28, disposed between the pick-up 26 and the inlet 34. As such, the pre-cutter 28 is disposed downstream of the pick-up 26 and upstream of the inlet 34 relative to a direction of travel of the crop material. The pre-cutter 28 cuts or chops the crop material into smaller pieces. The baler implement 20 may include a base floor 27 adjacent to the pick-up 26 and under the pre-cutter 28. The base floor 27 may be a concave shape and guide the crop material toward the inlet 34.
The baler implement 20 may be configured as a variable chamber baler, or as a fixed chamber baler. The baler implement 20 shown in the
The crop material is directed through the inlet 34 and into the baling chamber 32, whereby the forming belts 37 roll the crop material in a spiral fashion into the bale 90 having a cylindrical shape. The forming belts 37 apply a constant pressure to the crop material as the crop material is formed into the bale 90. A belt tensioner 39 continuously moves the forming belts 37 radially outward relative to a center of the cylindrical bale 90 as the diameter of the bale 90 increases. The belt tensioner 39 maintains the appropriate tension in the belts 37 to obtain the desired density of the crop material.
The baler implement 20 includes a wrap system 80. The wrap system 80 is operable to wrap the bale 90 with a wrap material inside the baling chamber 32. Once the bale 90 is formed to a desired size, the wrap system 80 feeds the wrap material into the baling chamber 32 to wrap the bale 90 and thereby secure the crop material in a tight package and maintain the desired shape of the bale 90. The wrap material may include, but is not limited to, a twine, a net mesh, or a solid plastic wrap. Movement of the gate into the open position simultaneously moves the belts clear of the formed bale 90 and allows the formed and wrapped bale to be discharged through the rear of the baling chamber 32.
The baler implement 20 further includes a uniform feeding apparatus 40. The uniform feeding apparatus 40 may include at least one flap. As shown in
In this implementation, the first flap 42 and the second flap 44 are circular sector shapes, each of which is a shape with an arc disposed at a rear end of the first flap 42 and the second flap 44. Alternatively, the first flap 42 and the second flap 44 may include a triangular shape, a rectangular shape, or some other shape. In addition, the number of flaps illustrated herein is only for example. In other implementation, the number of flaps may be one or more than one.
Referring to
The first flap 42 is selectively controllable for movement relative to the central longitudinal axis 226 between a first position FP1 of the first flap 42 to direct the crop material toward the first lateral side 322 of the baling chamber 32 relative to the central longitudinal axis 226, as shown in
When one side of the bale 90 corresponding to the first lateral side 322 of the baling chamber 32 has a lesser weight, a lower density, or a smaller diametric size, the first flap 42 and the second flap 44 may be moved to the first positions FP1, SP1 to direct the crop material toward the first lateral side 322. On the contrary, when another side of the bale 90 corresponding to the second lateral side 324 of the baling chamber 32 has a lesser weight, a lower density, or a smaller diametric size, the first flap 42 and the second flap 44 may be moved to the second positions FP2, SP2 to direct the crop material toward the second lateral side 324. Because the first flap 42 and second flap 44 are operable to switch between the neutral positions FN, SN, the first positions FP1, SP1, and the second positions FP2, SP2, the operator may not have to follow a Zig Zag driving path with multiple tight turns while gathering the crop material.
In addition, the first flap 42 and the second flap 44 may rotate independently from one another, described in greater detail below.
Referring to
The baler implement 20 may further include a drive mechanism 50 coupled to the uniform feeding apparatus 40. The drive mechanism 50 is operable to move the uniform feeding apparatus 40, and the uniform feeding apparatus 40 directs the crop material toward the first lateral side 322 or the second lateral side 324 of the baling chamber 32 before the crop material enter the inlet 34. The drive mechanism 50 may have one or more motors and/or actuators to drive and/or move the one or more flap (such as the first flap 42 and the second flap 44) directly or indirectly.
Referring to
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Referring to
It is noted that in another implementation, the roller wheel 622 is rotatably driven by the belt 602 rather than directly driven by the pinion gear of the first motor 56 if the first motor 56 drives another roller wheel to move the belt 602 (not shown).
Referring to
Referring to
There are many ways to support the uniform feeding apparatus 40 and/or the drive mechanism 50. As shown in
Referring to
The baler implement 20 may further include a sensor(s) 70 operable to detect a characteristic of the bale 90 on both the first lateral side 322 and the second lateral side 324 of the baling chamber 32. The characteristic of the bale 90 is related to a distribution of the crop material across a width W of the main frame 22 (as shown in
Referring to
Without in any way limiting the scope, interpretation, or application of the claims appearing below, a technical effect of one or more of the example embodiments disclosed herein is to direct the crop material toward one of the lateral sides of the baling chamber to form a uniform bale. Another technical effect of one or more of the example embodiments disclosed herein is to allow the operator of the baler implement to drive in a smooth path instead of a Zig Zag driving path with multiple tight turns.
While the above describes example embodiments of the present disclosure, these descriptions should not be viewed in a limiting sense. Rather, other variations and modifications may be made without departing from the scope and spirit of the present disclosure as defined in the appended claims.
Claims
1. A baler implement comprising:
- a main frame extending along a central longitudinal axis between a forward end and a rearward end relative to a direction of travel;
- a pick-up operable to gather and move crop material along a crop path relative to the main frame;
- a baling system attached to the main frame, the baling system defining a baling chamber having an inlet positioned to receive the crop material therethrough from the pick-up, the baling system operable to form the crop material into a bale within the baling chamber;
- a flap positioned downstream of the pick-up and upstream of the inlet relative to movement of the crop material along the crop path, wherein the flap is selectively controllable for movement relative to the central longitudinal axis between a first position of the flap to direct the crop material toward a first lateral side of the baling chamber relative to the central longitudinal axis and a second position of the flap to direct the crop material toward a second lateral side of the baling chamber relative to the central longitudinal axis; and
- a drive mechanism coupled to the flap and including a support structure laterally coupled to two opposing lateral sides of the main frame relative to the central longitudinal axis;
- wherein the flap is adjustable in locations along the support structure and is fixed by a mounting element;
- wherein the support structure includes a slot and the flap extends an extension operable to slide within the slot to adjust the location of the flap on the support structure.
2. The baler implement of claim 1, wherein the drive mechanism is operable to move the flap between the first position and the second position.
3. The baler implement of claim 2, wherein the drive mechanism includes a motor coupled to the flap, wherein the motor includes a rotational output operable to swing the flap.
4. The baler implement of claim 2, further comprising a second flap coupled to the main frame, wherein the second flap is disposed downstream of the pick-up and upstream of the inlet relative to movement of the crop material along the crop path, wherein the second flap is selectively controllable for movement relative to the central longitudinal axis between a first position of the second flap to direct the crop material toward the first lateral side of the baling chamber relative to the central longitudinal axis and a second position of the second flap to direct the crop material toward the second lateral side of the baling chamber relative to the central longitudinal axis.
5. The baler implement of claim 4, wherein the drive mechanism includes a motor coupled to the flap and to the second flap, wherein the motor is operable to simultaneously move the flap and the second flap.
6. The baler implement of claim 5, wherein the drive mechanism includes a carrier, a first driven element, and a second driven element, and the first driven element is rotatably driven by one of the carrier and the motor to swing the flap, and the second driven element is rotatably driven by the carrier to swing the second flap.
7. The baler implement of claim 6, wherein the first driven element and the second driven element are rotatably coupled to the support structure.
8. The baler implement of claim 1, further comprising a sensor operable to detect a characteristic of the bale on both the first lateral side and the second lateral side of the baling chamber.
9. The baler implement of claim 8, wherein the characteristic of the bale is related to a distribution of the crop material across a width of the main frame.
10. The baler implement of claim 8, further comprising a controller in communication with the sensor and operable to receive a signal from the sensor, wherein the controller is configured to determine an amount of movement of the flap relative to the central longitudinal axis of the main frame.
11. The baler implement of claim 10, wherein when one of a density, a weight, or a diametric size of the bale varies by more than a predefined amount between the first lateral side and the second lateral side of the baling chamber, the controller is operable to position the flap in one of the first position or the second position to direct the crop material toward the one of the first lateral side and the second lateral side of the baling chamber in which the one of the density, the weight, or the diametric size of the bale is lesser than the other one of the first lateral side and the second lateral side of the baling chamber.
12. The baler implement of claim 1, wherein the flap is a circular sector shape with an arc disposed at a rear end of the flap.
13. The baler implement of claim 1, further comprising a pre-cutter disposed downstream of the pick-up and upstream of the flap relative to the movement of the crop material along the crop path, wherein the pre-cutter is operable to cut or chop the crop material into smaller pieces.
14. A baler implement comprising:
- a main frame extending along a central longitudinal axis between a forward end and a rearward end relative to a direction of travel; a pick-up operable to gather and move crop material along a crop path relative to the main frame; a baling system attached to the main frame, the baling system defining a baling chamber having an inlet positioned to receive the crop material therethrough from the pick-up, the baling system operable to form the crop material into a bale within the baling chamber; and a flap positioned downstream of the pick-up and upstream of the inlet relative to movement of the crop material along the crop path, wherein the flap is selectively controllable for movement relative to the central longitudinal axis between a first position of the flap to direct the crop material toward a first lateral side of the baling chamber relative to the central longitudinal axis and a second position of the flap to direct the crop material toward a second lateral side of the baling chamber relative to the central longitudinal axis; a drive mechanism coupled to the flap and operable to move the flap between the first position and the second position; and a second flap coupled to the main frame, wherein the second flap is disposed downstream of the pick-up and upstream of the inlet relative to movement of the crop material along the crop path, wherein the second flap is selectively controllable for movement relative to the central longitudinal axis between a first position of the second flap to direct the crop material toward the first lateral side of the baling chamber relative to the central longitudinal axis and a second position of the second flap to direct the crop material toward the second lateral side of the baling chamber relative to the central longitudinal axis; wherein the drive mechanism includes a motor coupled to the flap and to the second flap, wherein the motor is operable to simultaneously move the flap and the second flap; wherein the drive mechanism includes a carrier, a first driven element, and a second driven element, and the first driven element is rotatably driven by one of the carrier and the motor to swing the flap, and the second driven element is rotatably driven by the carrier to swing the second flap; wherein the carrier is a belt, and the first driven element and the second driven element are roller wheels engaging the belt.
15. A baler implement comprising:
- a main frame extending along a central longitudinal axis between a forward end and a rearward end relative to a direction of travel;
- a pick-up operable to gather and move crop material along a crop path relative to the main frame;
- a baling system attached to the main frame, the baling system defining a baling chamber having an inlet positioned to receive the crop material therethrough from the pick-up, the baling system operable to form the crop material into a bale within the baling chamber; and
- a flap positioned downstream of the pick-up and upstream of the inlet relative to movement of the crop material along the crop path, wherein the flap is selectively controllable for movement relative to the central longitudinal axis between a first position of the flap to direct the crop material toward a first lateral side of the baling chamber relative to the central longitudinal axis and a second position of the flap to direct the crop material toward a second lateral side of the baling chamber relative to the central longitudinal axis;
- a sensor operable to detect a characteristic of the bale on both the first lateral side and the second lateral side of the baling chamber; and
- a controller in communication with the sensor and operable to receive a signal from the sensor, wherein the controller is configured to determine an amount of movement of the flap relative to the central longitudinal axis of the main frame;
- wherein when the bale is forming uniformly on both the first lateral side and the second lateral side of the baling chamber with respect to one of a density, a weight, or a diametric size of the bale, the controller is operable to position the flap in a neutral position in which the flap is parallel to the central longitudinal axis of the main frame.
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Type: Grant
Filed: Oct 12, 2021
Date of Patent: Sep 23, 2025
Patent Publication Number: 20230112403
Assignee: DEERE & COMPANY (Moline, IL)
Inventor: Nikhil N. Dindorkar (Pune)
Primary Examiner: Joseph M Rocca
Assistant Examiner: Ashley A Kaercher
Application Number: 17/450,618
International Classification: A01F 15/10 (20060101); A01F 15/08 (20060101); A01F 15/18 (20060101);